Interaction system
By designing an interactive system, users can share and receive their psychological state through physiological data transmission and feedback mechanisms, solving the problem of difficulty in obtaining timely support under stress and realizing timely sharing of psychological state and emotional support.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SOUTHERN UNIVERSITY OF SCIENCE AND TECHNOLOGY
- Filing Date
- 2025-07-30
- Publication Date
- 2026-08-04
AI Technical Summary
People under stress find it difficult to seek support from others in a timely manner and tend to suppress or hide their psychological stress, resulting in an inability to release it effectively, which affects their physical and mental health and social relationships.
Design an interactive system, including a first interactive device and a second interactive device, to transmit and receive physiological data through an antenna assembly and a main circuit, allowing users to share their psychological state and receive feedback from others, and to provide support and comfort.
It enables timely sharing and support of users' psychological states, helps users to promptly detect and alleviate abnormal psychological states, and improves the timeliness and effectiveness of emotional support.
Smart Images

Figure CN224595103U_ABST
Abstract
Description
Technical Field
[0001] This specification relates to the field of information technology, and in particular to an interactive system. Background Technology
[0002] With continuous social development and the accelerated pace of modern life, people face increasing psychological pressure in their daily lives, studies, and work. Prolonged stress not only severely impacts physical and mental health but can also trigger social problems. Because people are often in different locations and have busy schedules, it is often difficult to seek timely support from others, such as social support or comfort from family and friends, when under stress. Furthermore, people tend to suppress or hide their stress, or choose not to share it out of reluctance to bother others. This prevents the effective release of stress and hinders the access to timely support.
[0003] The information in the background section is merely information known only to the inventor and does not imply that such information had entered the public domain before the filing date of this specification, nor does it imply that it can be considered prior art in this specification. Utility Model Content
[0004] This specification provides an interactive system. In a first aspect, this specification provides an interactive system. The interactive system includes a first interactive device. The first interactive device includes a first housing; a first antenna assembly mechanically connected to the first housing; and a first main circuit mechanically connected to the first housing and coupled to the first antenna assembly. The first main circuit is configured to, when operating,: receive first physiological data of a first user through the first antenna assembly, the first physiological data reflecting the psychological state of the first user; determine that the first user intends to share privacy; share the first physiological data with a second interactive device through the first antenna assembly, the second interactive device being associated with a second user; receive second feedback data from the second interactive device, the second feedback data representing the second user's response to the psychological state of the first user; and display the second user's response based on the second feedback data.
[0005] Secondly, this specification also provides an interactive system. The interactive system includes a second interactive device for placement on a desktop, comprising a second housing, a second antenna assembly, a second receiving assembly, a second display assembly, and a second main circuit. The second housing is mechanically connected to the second main circuit, the second antenna assembly, the second receiving assembly, and the second display assembly, and includes a second base for placing the second interactive device on the desktop. A second main body is disposed on the second base. The second main circuit is coupled to the second receiving assembly, the second display assembly, and the second antenna assembly, and is configured to receive and process first physiological data of a first user transmitted by the first interactive device via the second antenna assembly, generate a second control command, and receive and process data from the second receiving assembly. The second display assembly is configured to display a first psychological state corresponding to the first physiological data based on the second control command. The second receiving assembly is configured to respond to the second user's response.
[0006] Thirdly, this specification also provides an interactive system. The interactive system includes a first interactive device and a second interactive device. The first interactive device is placed on a desktop and includes a first housing, a first antenna assembly, a first receiving assembly, a first display assembly, and a first main circuit. The first housing is mechanically connected to the first antenna assembly, the first main circuit, the first receiving assembly, and the first display assembly. The first housing includes a first base for placing the first interactive device on the desktop, and a first main body disposed on the first base. The first receiving assembly is configured to respond to a privacy sharing operation by a first user. The first main circuit is coupled to the first antenna assembly, the first receiving assembly, and the first display assembly, and is configured to receive and send first physiological data of the first user to the second interactive device via the first antenna assembly, receive and process data from the first receiving assembly, and generate a first control command. The first display assembly is configured to respond to the first control command. The instruction displays the response of a second user. A second interactive device, placed on a desktop, includes a second housing, a second antenna assembly, a second receiving assembly, a second display assembly, and a second main circuit. The second housing is mechanically connected to the second main circuit, the second antenna assembly, the second receiving assembly, and the second display assembly. It includes a second base for placing the second interactive device on the desktop, and a second main body disposed on the first base. The second main circuit is coupled to the second receiving assembly, the second display assembly, and the second antenna assembly, and is configured to receive and process first physiological data of a first user transmitted by the first interactive device through the second antenna assembly, generate a second control instruction, and receive and process data from the second receiving assembly. The second display assembly is configured to display a first psychological state corresponding to the first physiological data based on the second control instruction. The second receiving assembly is configured to respond to the response operation of the second user.
[0007] Other functionalities of the interactive system provided in this specification will be partially listed in the following description. The inventive aspects of the interactive system provided in this specification can be fully understood through practice or use of the methods, devices, and combinations described in the detailed examples below. Attached Figure Description
[0008] To more clearly illustrate the technical solutions in the embodiments of this specification, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this specification. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0009] Figure 1 A schematic diagram illustrating an application scenario of an interactive system provided according to an embodiment of this specification is shown; Figure 2 A schematic diagram of the structure of a first interactive device provided according to an embodiment of this specification is shown; Figure 3 A schematic diagram of the structure of a second interactive device provided according to an embodiment of this specification is shown; Figure 4 A schematic diagram of the structure of an interactive device provided according to an embodiment of this specification is shown; Figure 5 The diagram illustrates a structural schematic of a first interactive device and a second interactive device according to embodiments of this specification; and Figure 6 A hardware structure diagram of a circuit provided according to an embodiment of this specification is shown. Detailed Implementation
[0010] The following description provides specific application scenarios and requirements for this specification, intended to enable those skilled in the art to make and use the contents of this specification. Various partial modifications to the disclosed embodiments will be apparent to those skilled in the art, and the general principles defined herein can be applied to other embodiments and applications without departing from the spirit and scope of this specification. Therefore, this specification is not limited to the embodiments shown, but rather to the widest scope consistent with the claims.
[0011] The terminology used herein is for the purpose of describing particular exemplary embodiments only and is not restrictive. For example, unless the context clearly indicates otherwise, the singular forms “a,” “an,” and “the” used herein may also include the plural forms. When used in this specification, the terms “comprising,” “including,” and / or “containing” mean that the associated integers, steps, operations, elements, and / or components are present, but do not exclude the presence of one or more other features, integers, steps, operations, elements, components, and / or groups, or that other features, integers, steps, operations, elements, components, and / or groups may be added to the system / method.
[0012] Considering the following description, these and other features of this specification, as well as the operation and function of the related components of the structure, and the economy of assembly and manufacture of the parts, can be significantly improved. All of these form part of this specification with reference to the accompanying drawings. However, it should be clearly understood that the drawings are for illustrative and descriptive purposes only and are not intended to limit the scope of this specification. It should also be understood that the drawings are not drawn to scale.
[0013] The flowcharts used in this specification illustrate operations implemented according to some embodiments of this specification. It should be clearly understood that the operations in the flowcharts may not be implemented in a sequential order. Instead, the operations may be implemented in reverse order or simultaneously. Furthermore, one or more additional operations may be added to the flowcharts. One or more operations may be removed from the flowcharts.
[0014] Figure 1 A schematic diagram illustrating an application scenario 100 of an interactive system provided according to an embodiment of this specification is shown. Figure 1 As shown, application scenario 100 may include a first user 110, a second user 120, and an interaction system 130.
[0015] The first user 110 can be any user using the interactive system 130.
[0016] The second user 120 can be a user associated with the first user 110. For example, the second user 120 could be someone closely related to or a supporter of the first user 110. Although the first user 110 and the second user 120 are not in the same space, the second user 120 wants to know the first user 110's mental state and wants to provide support, comfort, or feedback when the first user 110's mental state is abnormal (e.g., excessive psychological stress). The first user 110 is also willing to share their mental state or physiological data reflecting their mental state with the second user 120. For example, the second user 120 could be a distant relative, a work partner, or a lover of the first user 110, etc.
[0017] In some embodiments, the first user 110 may also be someone who has a close relationship with or is a supporter of the second user 120. The first user 110 wants to know the mental state of the second user 120, and the second user 120 is also willing to share their mental state with the first user 110.
[0018] In some embodiments, taking the example of a first user 110 sharing their mental state with a second user 120, application scenario 100 may include multiple second users 120. That is, the first user 110 can share their mental state with multiple second users 120. For example, the first user 110 can simultaneously share their mental state with their partner and family. In this case, the first user 110's partner and family are all second users 120. As another example, the first user 110 can simultaneously share their mental state with multiple friends. For example, the first user 110 can simultaneously share their mental state with three, four, or five friends.
[0019] The interaction system 130 can be a system that enables interaction between a first user 110 and a second user 120. The first user 110 and the second user 120 can share their respective psychological states through the interaction system 130, provide support to each other when the other's psychological state is abnormal, and demonstrate their support through the interaction system 130. This allows users to promptly perceive the psychological state of those they care about and provide direct and timely feedback, enabling the recipient to receive timely support, gain emotional strength, and alleviate abnormal psychological states.
[0020] The interactive system 130 includes a first interactive device 131 and a second interactive device 132. In some embodiments, the interactive system 130 may further include a first communication device. In some embodiments, the interactive system 130 may further include a first monitoring device. In some embodiments, the interactive system 130 may further include a second communication device. In some embodiments, the interactive system 130 may further include a second monitoring device.
[0021] The first interactive device 131 can be associated with the first user 110. The first user 110 can use the first interactive device 131. For example, the first user 110 can log in to their personal account on the first interactive device 131 to use it. Another example is that the first user 110 can connect and bind the first interactive device 131 to their mobile device to use it. As an example, the first user 110 can bind the first interactive device 131 to their mobile phone to use it via their phone.
[0022] The second interactive device 132 can be associated with the second user 120. The second user 120 can use the second interactive device 132. For example, the second user 120 can log in to their personal account on the second interactive device 132 to use the second interactive device 132. As another example, the second user 120 can connect and bind the second interactive device 132 to their own mobile device to use the first interactive device 131.
[0023] The second interactive device 132 can establish a communication connection with the first interactive device 131, so that the first user 110 and the second user 120 can share their psychological states, express support to each other, or receive support from each other through the interactive device.
[0024] In some embodiments, the first interactive device 131 and the second interactive device 132 can establish a communication connection with a remote server. The first interactive device 131 and the second interactive device 132 communicate indirectly through the server, thereby realizing a cross-device psychological state sharing and response mechanism.
[0025] The first interactive device 131 and the second interactive device 132 are described below. For ease of description, the example given is of a first user 110 sharing their physiological data with a second user 120, and the second user 120 responding to the first user 110 based on the psychological state reflected in the physiological data. The process of the second user 120 sharing their physiological data with the first user 110, and the first user 110 responding to the second user 120 based on the psychological state reflected in the physiological data, will be described later.
[0026] The first interactive device 131 can be a portable device. The first interactive device 131 can be characterized by miniaturization and lightweight, making it easy for the first user 110 to move, carry, and place it in daily life as needed. For example, when the first user 110 goes from the company to home, he / she can take the first interactive device 131 with him / her.
[0027] In some embodiments, the first interactive device 131 is used to be placed on a desktop, and the first interactive device 131 can be a desktop electronic device. For example, the first interactive device 131 can be a robot that can be placed on a desktop. The first interactive device 131 can be a box-like electronic device that can be placed on a desktop. The size of the first interactive device 131 can be selected according to the application. For example, in some embodiments, the overall size of the first interactive device 131 can be on the order of centimeters to facilitate placement on a desktop. For example, when the first interactive device 131 is designed as a robot, its size can be less than 30 cm (length) × 30 cm (width) × 40 cm (height).
[0028] like Figure 1 As shown, the first interactive device 131 may include a first housing 1311, a first antenna assembly 1312, and a first main circuit 1313. The first interactive device 131 may also include a first receiving assembly 1314 and a first display assembly 1315.
[0029] It's worth noting that the "desktop" here can be any surface the user wants to place the item on, not just a tabletop. For example, the target surface could be a chair surface, a step surface, etc. The target surface can be flat or not; this instruction manual does not impose any restrictions on this.
[0030] Figure 2 A schematic diagram of the structure of a first interactive device 131 provided according to an embodiment of this specification is shown. The following is based on... Figure 1 as well as Figure 2 Introducing the first interactive device 131.
[0031] The first housing 1311 can serve as a mounting base for the first interactive device 131. Other components of the first interactive device 131 (such as the first antenna assembly 1312, the first main circuit 1313, the first receiving assembly 1311, the first display assembly 1315, etc.) can be mounted on the first housing 1311. For example, the first housing 1311 can be mechanically connected to the first main circuit 1312, the first antenna assembly 1313, the first receiving assembly 1314, and the first display assembly 1315. For example, these components can be installed inside or outside the first housing 1311. The shape of the first housing 1311 can be arbitrary to accommodate the installation of other components. The shape of the first housing 1311 can conform to user preferences and personalized decoration needs. For example, the shape of the first housing 1311 can be designed as a variety of decorative items. For example, the first housing 1311 can take the form of a human figure, an animal, a vase, etc.
[0032] In some embodiments, the first interactive device 131 may be as follows: Figure 2 The first housing 1311 is shown in a cubic shape. In some embodiments, the overall shape of the first housing 1311 can be that of a small robot. The material of the first housing 1311 can be any material, such as metal, plastic, polymer, etc. This specification does not limit the shape and material of the first housing 1311. The size of the first housing 1311 can be selected according to the application. When the overall size of the first interactive device 131 is relatively large, the size of the first housing 1311 can be relatively large. When the overall size of the first interactive device 131 is relatively small, the size of the first housing 1311 can be relatively small. For example, when the first interactive device 131 needs to be designed as a desktop electronic device, the size of the first housing 1311 can be relatively small. For example, the size of the first housing 1311 is on the order of centimeters. As an example, when the first interactive device 131 is designed as a robot, the size of the first housing 131 can be less than 30 cm (length) × 30 cm (width) × 40 cm (height).
[0033] In some embodiments, the first housing 1311 may include a receiving cavity to allow other components to be installed within it. Installing other components within the receiving cavity not only improves aesthetics but also provides dust and impact protection.
[0034] In some embodiments, the first housing 1311 includes a first base 1311A and a first body 1311B.
[0035] The first base 1311A can be used to place the first interactive device 131 on a desktop. The first base 1311A provides a stable support structure for the first interactive device 131, ensuring that the first interactive device 131 can be placed in a predetermined manner (e.g., at a specific angle and orientation) at a certain location (e.g., on a desktop). Therefore, the first base 1311A can have a non-slip bottom or a center of gravity design. The first base 1311A can be a circular base, or it can be... Figure 2 The square base is shown. The first base 1311A may have a built-in magnetic component, rubber pad, or connecting bayonet. The first base 1311A may be a detachable component or integrally formed with the first body 1311B. Some components of the first interactive device 131 (such as the first main circuit 1313) may be installed in the first base 1311A.
[0036] The first main body 1311B can be disposed on the first base 1311A. The first main body 1311B can be assembled or fixed on the first base 1311A. Other components of the first interactive device 131 (e.g., the first receiving component 1311, the first display component 1315) can be mounted on the first main body 1311B.
[0037] First antenna assembly 1312 ( Figure 1 (As shown in the diagram) It can be installed within the first housing 1311. For example, the first antenna assembly 1312 can be disposed inside the accommodating cavity, edge region, or other suitable location of the first housing 1311 to ensure signal transmission performance. Further, the first antenna assembly 1312 can be disposed within the first base 1311A. The first antenna assembly 1312 can be used to realize communication connections between the first interactive device 131 and other external devices. For example, the first antenna assembly 1312 is used to realize communication connections between the first interactive device 131 and the second interactive device 132. Specifically, the first antenna assembly 1312 is used to realize communication connections between the first main circuit 1312 and other external devices, such as the second interactive device 132. The first antenna assembly 1312 may include, but is not limited to, a Bluetooth antenna, a cellular communication antenna, a Wi-Fi antenna, etc.
[0038] First receiving component 1314 ( Figure 1 and Figure 2(As shown in the diagram) It can be installed within the first housing 1311. The first receiving component 1314 can be configured to respond to a privacy sharing operation by the first user 110. The first physiological data belongs to the personal privacy of the first user 110. The first interaction device 131 can only share the first physiological data with others after determining that the first user 110 has the intention to share privacy. The first interaction device 131 can receive the privacy sharing intention of the first user 110 through the first receiving component 1314. The first user 110 can express their privacy sharing intention through the first receiving component 1313.
[0039] In some embodiments, the first receiving component 1314 includes a first button component. The first button component is configured to sense a press by the first user 110. The first user 110 expresses their intention to share by pressing the first button component. The first button component may be disposed on the first body 1311B. For example, the first button component may be disposed on the front of the first body 1311B, facing the first user 110, for easy operation by the first user 110. The first button component may also be disposed on the sides of both sides of the first body 1311B for easy operation by the first user 110. For example, as Figure 2 As shown, the front of the first main body 1311B is provided with a first button component, button A, which makes it easy for the first user 110 to indicate that he or she has the intention to share privacy.
[0040] In some embodiments, the first receiving component 1314 includes a first microphone component. The first microphone component is configured to capture voice output by the first user 110. The first user 110 expresses their intention to share by uttering a preset voice. The first microphone component may be disposed on the first body 1311B. For example, the first microphone component may be disposed on the front of the first body 1311B, facing the first user 110, to facilitate the capture of the first user 110's voice. The first microphone component may also be disposed on the sides of both sides of the first body 1311B.
[0041] In some embodiments, the first user 110 can express different sharing intentions through the first receiving component 1314. For example, the first user 110 can select the object to share with by controlling the duration of pressing the first button component. Different durations correspond to different sharing objects. As another example, the first user 110 can issue different sharing commands to cause the first microphone component to pick up different voices. Different sharing commands or voices correspond to different sharing objects. Furthermore, the first receiving component 1314 includes multiple components, with different components corresponding to different sharing objects. For example, the first microphone component corresponds to sharing object 1, and the first button component corresponds to sharing object 2. This specification does not impose further limitations.
[0042] First main circuit 1313 ( Figure 1(As shown in the diagram) It can be installed within the first housing 1311. For example, the first main circuit 1313 can be disposed on the heat-conducting surface, ventilation area, or metal structure portion of the first housing 1311 to facilitate heat conduction and diffusion. Further, the first antenna assembly 1312 can be disposed within the first base 1311A. The first main circuit 1313 can be coupled to the first antenna assembly 1312 to communicate with external devices through the first antenna assembly 1312. In some embodiments, as described above, the interactive system 130 may include a first communication device and a first monitoring device. The first main circuit 1313 can communicate with the first communication device and / or the first monitoring device through the first antenna assembly 1312. For example, when the first antenna assembly is a Bluetooth antenna, the first main circuit 1313 can be Bluetooth connected to the first communication device and / or the first monitoring device through the first antenna assembly 1312 to receive data from these external devices.
[0043] The first main circuit 1313 can be coupled to the first antenna assembly 1312, the first receiving assembly 1314, and the first display assembly 1315. The first main circuit 1313 is configured to receive and transmit first physiological data of the first user 110 to the second interactive device 132 via the first antenna assembly 1312, receive and process data from the first receiving assembly 1314, and generate a first control command. The first receiving assembly 1314 may generate data in response to a privacy sharing operation by the first user 110. This data can be transmitted to the first main circuit 1313 via the first antenna assembly 1312. The first control command may be a command to control the first display assembly 1315.
[0044] Specifically, the first main circuit 1313 is configured to receive first physiological data reflecting the psychological state of the first user 110 via the first antenna assembly 1312 during operation. After determining through the first receiving assembly 1314 that the first user 110 intends to share privacy, the first physiological data is shared with the second interactive device 132 via the first antenna assembly 1312. The first main circuit 1313 is also configured to receive second feedback data from the second interactive device 132. The second feedback data is the response of the second user 120 to the psychological state of the first user 110. The first main circuit 1313 can display the response of the second user 120 to the psychological state of the first user 110 based on the second feedback data.
[0045] In other words, the first user 110 can share their first physiological data with a designated second user through the first interaction device 110. This first physiological data can reflect the first user's psychological state. When the first physiological data is abnormal, the first user's psychological state may fluctuate or become abnormal. Details will be discussed later.
[0046] In some embodiments, the first main circuit 1313 is further configured to determine the first psychological state of the first user 110 based on first physiological data; and to display the first psychological state to the first user 110. That is, the first user 110 can not only share their psychological state with others through the first interactive device 110, but also know their own psychological state. This is because some users are under prolonged high pressure and may find it difficult to perceive their abnormal psychological state, or may habitually ignore it. By providing a non-subjective third-party perspective through the first interactive device 131, users can promptly perceive their abnormal state and make better adjustments. Specific details will be described later.
[0047] In some embodiments, the interactive system 130 may further include a first monitoring device. The first monitoring device may include various sensors to collect first physiological data from the first user 110 in real time. In some embodiments, the first monitoring device may include a portable device worn by the first user 110, such as a smart bracelet, health monitoring watch, etc. The first physiological data may include source physiological data directly collected by the first monitoring device from the first user 110. The source physiological data may include, but is not limited to, data such as the first user 110's heart rate interval sequence, heart rate, body temperature, blood pressure, blood oxygen saturation, and skin conductance. The first main circuit 1313 may be communicatively connected to the first monitoring device via a first antenna assembly 1312, for example, via Bluetooth, to receive the first physiological data from the first monitoring device.
[0048] In some embodiments, the interactive system 130 may further include a first communication device. The first communication device may include hardware with data processing capabilities and necessary programs to drive the hardware device. In some embodiments, the first communication device may include a mobile device, tablet computer, laptop computer, built-in device in a motor vehicle, or similar content, or any combination thereof. For example, a mobile device may include a smart home device, a smart mobile device, a virtual reality device, an augmented reality device, or similar devices, or any combination thereof. For example, a smart home device may include a smart TV, a desktop computer, etc., or any combination thereof. For example, a smart mobile device may include a smartphone, a personal digital assistant, a gaming device, a navigation device, etc., or any combination thereof. For example, a built-in device in a motor vehicle may include an in-vehicle computer, an in-vehicle television, etc.
[0049] The first main circuit 1313 can communicate with a first communication device, such as via Bluetooth, through the first antenna assembly 1312 to receive first physiological data from the first communication device. The first physiological data may be feature data obtained by feature extraction from the source physiological data of the first user. In some embodiments, the interactive system 130 includes both a first monitoring device and a first communication device communicatively connected to it. The first monitoring device can directly collect source physiological data from the first user 110 and send the source physiological data to the first communication device. The first communication device can perform feature extraction on the source physiological data to obtain the feature data—the first physiological data. For example, the source physiological data includes heart rate data, such as a heartbeat interval sequence. The first physiological data may include time-domain parameters and / or frequency-domain parameters characterizing heart rate variability. The first physiological data may include, but is not limited to, root mean square of successive differences (RMSSD), percentage of successive neural intervals that differ by more than 50 milliseconds (pNN50), low frequency power (LF), high frequency power (HF), and frequency domain parameters such as the LF / HF ratio.
[0050] As an example, the first monitoring device is a health monitoring watch worn by the first user 110, and the first communication device is the first user 110's mobile phone. An application (APP) corresponding to the health monitoring watch can be downloaded on the mobile phone. The health monitoring watch can collect the first user 110's heart rate data. The mobile phone can receive the heart rate data sent by the health monitoring watch and obtain the first user 110's heart rate variability data based on the heart rate data.
[0051] Primary physiological data can reflect psychological state to some extent. Specifically, primary physiological data can reflect stress level to some extent. For example, primary physiological data is the RMSSD, which represents heart rate variability. The lower the RMSSD, the higher the user's stress and the more tense they are; conversely, the higher the RMSSD, the more relaxed the user is. By sharing the primary physiological data with the second interactive device 132, the second user 120 can know the psychological state or stress level of the first user 110.
[0052] Continue to refer to Figure 1 and Figure 2The first interactive device 131 includes a first display component 1315. The first display component 1315 is configured to display a response from a second user according to a first control command. A first main circuit 1313 can send the first control command to the first display component 1315 via a first antenna component 1313. The first control command can control the operation of the first display component 1315.
[0053] In some embodiments, the first display component 1315 may include a first display. The first display may be disposed on the front of the first body 1311B, facing the first user 110, so that the first user 110 can see the display interface of the first display. The first display is configured to display response content related to the second user's response on the display interface. The response content may be in the form of at least one of text, images, animation, or video. For example, the display interface of the first display may play animations with therapeutic functions. Different responses from the second user 120 to the first user 110 may correspond to different images, different text, or different poses of digital humans displayed on the display interface. For example, such as... Figure 2 As shown, the first display B is positioned on the front of the first main body 1311B. The first display B displays the response of the second user 120 to the mental state of the first user 110—displaying the words "I am with you". ".
[0054] In some embodiments, the first display component 1315 may include a first lighting component. The first lighting component may be disposed on the first body and configured to flash in a predetermined manner to display the response of the second user. Different responses of the second user 120 to the first user 110 may correspond to different frequencies or different brightnesses of LED light flashing.
[0055] In some embodiments, the first display component 1315 may include a first speaker component. A first control command may control the first speaker component (e.g., a loudspeaker) to play a response from the second user 120 to the psychological state of the first user 110. Different responses from the second user 120 to the first user 110 may correspond to the loudspeaker playing audio at different volumes, or the loudspeaker playing different audio at the same volume. For example, when the second user 120 wants to express strong comfort, the loudspeaker may play high-volume audio. When the second user 120 wants to express gentle comfort, the loudspeaker may play low-volume audio. The audio may be characteristic, soothing music, or it may contain comforting words, etc.
[0056] In some embodiments, the first display component 1315 may include a temperature regulating component. A first control command may control the temperature change of the temperature regulating component to display the response of the second user 120. For example, the temperature regulating component may be a micro-heating element (e.g., a resistance heater), a thermally conductive material, a thermoelectric cooler (TEC), etc. Different responses from the second user 120 to the first user 110 may correspond to different temperatures of the temperature regulating component.
[0057] In some embodiments, the first display component 1315 may also display the first psychological state of the first user 110 through the temperature regulation component. For example, when the first user 110's psychological state is normal, the temperature regulation component is at a low temperature; when the first user 110's psychological state is abnormal, the temperature regulation component is at a high temperature.
[0058] In some embodiments, the first display component 1315 may include a flexible deformable component. A first control command can control the flexible deformable component to deform in order to display the response of the second user. For example, the first housing 1313 is made using a flexible deformable component. When the first main circuit 1313 is operational, it controls the deformation of the first housing 1311. The flexible deformable component can be a flexible piezoelectric material, shape memory alloy, electroactive polymer, etc. Different responses from the second user 120 to the first user 110 can correspond to different degrees of deformation of the flexible deformable component.
[0059] In some embodiments, as previously described, the first interactive device 131 may be a robot. The first display component 1315 may include a first moving part. The first moving part is configured to perform a first preset action to express a response from the second user 120. For example, the first housing 1311 may include the first moving part. As previously described, the first housing 1311 may have different shapes, and the first housing 1311 may be in the shape of a robot. The first moving part may be a limb, head, etc., of the robot. The first main circuit 1313 may control the movement of the robot's limbs and head to express a response from the second user 120. As an example, the first preset action may be bending the robot's right arm. When the first main circuit 1313 is working, it may drive the robot's right arm to bend, making a gesture similar to pumping air.
[0060] As previously mentioned, the first interactive device 131 can also display its own first psychological state to the first user 110. Therefore, in some embodiments, after the first main circuit 1313 determines the first psychological state corresponding to the first physiological data, these components, such as the first display component 1315, can also be used to display its own first psychological state to the first user 110. The first psychological state can have different psychological levels. For example, the first psychological state can be any of Attention, Normal, or Great. The specific method for determining the first psychological state based on the first physiological data is described in the Second Interactive Device 132 section.
[0061] For example, in some embodiments, the first interactive device 131 may also play the first mental state of the first user 110 through the first speaker component.
[0062] For example, in some embodiments, the first interactive device 131 may also display the first psychological state of the first user 110 via a first display. Figure 2 As shown, the first display C also displays the first mental state of the first user 110—Your: Attention.
[0063] For example, in some embodiments, the first interactive device 131 may also display the first psychological state of the first user 110 through a flexible deformable component.
[0064] For example, in some embodiments, the first interactive device 131 may also display the first psychological state of the first user 110 through a temperature regulation component.
[0065] For example, in some embodiments, the first interactive device 131 may also display the first psychological state of the first user 110 through the first moving component. For example, when the first main circuit 1313 is working, it controls the first moving component to perform a second preset action to express the first psychological state. As an example, the second preset action may be the robot squatting. When the first main circuit 1313 is working, it can drive the robot to squat down, making a comforting posture.
[0066] To distinguish between the second user 120's response to the first user 110's state and the first user 110's own state, the first interaction device 131 may have different components. For example, the first interaction device 131 includes a first speaker component to play the second user's response and a first display to show the first mental state. The first interaction device 131 may also include multiple identical components. For example, the first interaction device 131 includes two displays, one showing the second user's response and the other showing the first mental state. The first interaction device 131 may also perform different preset actions through a first moving part to express the second user's response and the first mental state respectively.
[0067] In some embodiments, the first main circuit 1313 can establish a communication connection with a remote server and send a first instruction, including first physiological data, to the server. The first instruction instructs the server to send the first physiological data to the second interactive device 132, thereby enabling the second user 120 to become aware of the situation of the first user 110.
[0068] In some embodiments, the server stores the pairing relationship between the first and second interactive devices. Therefore, the server can directly forward the first physiological data to the second interactive device. In some embodiments, the first instruction may also include device identification information of the second interactive device. The server can identify the second interactive device based on its device identification information and then send the first physiological data to it.
[0069] Similar to the first interactive device 131, the second interactive device 132 can also be a portable device. The second interactive device 132 can be miniaturized and lightweight, making it easy for the second user 120 to move, carry, and place it in daily life as needed. For example, when the second user 120 goes home from work, they can bring the second interactive device 132 with them.
[0070] In some embodiments, the second interactive device 132 is used to be placed on a desktop, and the second interactive device 132 can be a desktop electronic device. For example, the second interactive device 132 can be a robot that can be placed on a desktop. The second interactive device 132 can be a box-like electronic device that can be placed on a desktop. The size of the second interactive device 132 can be selected according to the application. For example, in some embodiments, the overall size of the second interactive device 132 can be on the order of centimeters to facilitate placement on a desktop. For example, when the second interactive device 132 is designed as a robot, its size can be less than 30 cm (length) × 30 cm (width) × 40 cm (height).
[0071] The second interactive device 132 includes a second housing 1321, a second antenna assembly 1322, and a second main circuit 1323. The second interactive device 132 also includes a second receiving assembly 1324 and a second display assembly 1325.
[0072] Figure 3 A schematic diagram of the structure of a second interactive device 132 provided according to an embodiment of this specification is shown below. Figure 1 and Figure 3 Introducing the second interactive device 132.
[0073] The second housing 1321 can be a mounting base for the second interactive device 132. The second housing 1321 may include a second base 1321A and a second body 1321B. The second base 1321A can be used to place the second interactive device 132 in a predetermined position, such as a desktop. The second body 1321B can be disposed on the second base 1321A. The structure, properties, and functions of the second housing 1321 can be referred to the first housing 1311 described above, and will not be repeated here. The first housing 1311 and the second housing 1321 can be the same or different. Figure 3 As shown, the second shell 1321 has a cylindrical shape.
[0074] Second antenna assembly 1322 ( Figure 1 (As shown) It can be installed within the second housing 1321. The second antenna assembly 1322 can be used to realize the communication connection between the second interactive device 132 and other external devices. For example, the second antenna assembly 1322 is used to realize the communication connection between the second interactive device 132 and the first interactive device 131. Specifically, the second antenna assembly 1322 is used to realize the communication connection between the second main circuit 1322 and other external devices, such as the first interactive device 131. The structure and function of the second antenna assembly 1322 can be referred to the first antenna assembly 1311 above, and will not be repeated here.
[0075] Second main circuit 1323 ( Figure 1 (As shown) It can be installed within the second housing 1321. The second main circuit 1323 can be coupled to the second antenna assembly 1322 to communicate with external devices via the second antenna assembly 1322. In some embodiments, as previously described, the interaction system 130 may include a second communication device and a second monitoring device. The second main circuit 1323 can be communicatively connected to the second communication device and / or the second monitoring device via the second antenna assembly 1322. For example, when the second antenna assembly 1322 is a Bluetooth antenna, the second main circuit 1323 can be Bluetooth connected to the second communication device and / or the second monitoring device via the second antenna assembly 1322 to receive data from these external devices.
[0076] The second main circuit 1323 can be coupled to the second antenna assembly 1322, the second receiving assembly 1324, and the second display assembly 1325. The second main circuit 1323 is configured to receive and process first physiological data from the first user 110 transmitted by the first interactive device via the second antenna assembly 1322, generate a second control command, and receive and process data from the second receiving assembly 1324. Data from the second receiving assembly 1324 can be transmitted to the second main circuit 1323 via the second antenna assembly 1324. The second control command can be a command to control the second display assembly 1325.
[0077] Specifically, the second main circuit 1323 is configured to receive first physiological data of the first user 110 sent by the first interactive device 131 via the second antenna component 1322 during operation, and then determine and display the first psychological state of the first user based on the first physiological data. For example, the second main circuit 1323 establishes a communication connection with a remote server, receives a second instruction from the server including the first physiological data, and determines the first psychological state of the first user based on the first physiological data in the second instruction.
[0078] The second main circuit 1323 also responds to the second feedback operation made by the second user 120 to the first user 110's first psychological state, generates second feedback data, and sends the second feedback data to the first interactive device 131 through the second antenna component 1322. That is, the second user 120 can determine the psychological state of the first user 110 through the second interactive device 132 and respond to show support, so that the first user 110 can receive support in a timely manner, thereby gaining emotional support and alleviating their abnormal psychological state.
[0079] The second main circuit 1323 can determine the psychological state reflected in the raw physiological data. The first psychological state can have different psychological levels. For example, the first psychological state can be any one of Attention, Normal, or Great.
[0080] The second main circuit 1323 determines the first psychological state of the first user 110 based on the first physiological data. This can be achieved by the second main circuit 1323 determining a state classification threshold for the first user; and by determining the first psychological state (stress state) of the first user based on the first physiological data and the state classification threshold. For example, the first physiological data is the RMSSD value of the first user 110. When RMSSD ≤ 20, the first psychological state is noteworthy; when 20 < RMSSD ≤ 40, the first psychological state is normal; and when 40 < RMSSD, the first psychological state is very good.
[0081] In some embodiments, the state classification threshold may be selected based on the historical physiological data of the first user 110 to achieve personalized psychological state recognition and improve the accuracy of psychological state judgment.
[0082] In some embodiments, the interaction system 130 may include a second communication device. The second communication device is configured to receive first physiological data emitted by the first interaction device 131. For example, the second communication device may receive the first physiological data emitted by the first main circuit 1313. The second main circuit 1323 may be communicatively connected to the second communication device via a second antenna component 1322, such as a Bluetooth connection, and receive the first physiological data from the second communication device.
[0083] The first physiological data received by the second communication device from the first interactive device 131 can be the source physiological data of the first user. The second communication device can directly forward the source physiological data to the second main circuit 1323. Alternatively, the second communication device can extract feature data from the source physiological data and send the feature data as the first physiological data to the second main circuit 1323. The first physiological data received by the second communication device from the first interactive device 131 can be feature data, and the second communication device can forward the feature data to the second main circuit 1323.
[0084] After receiving the first physiological data, the second interactive device 132 can determine the first psychological state of the first user 110. Then, the second interactive device 132 can generate a second control command to control the second display component 1325 to display the first psychological state to the second user 120. The second display component 1325 is configured to display the first psychological state corresponding to the first physiological data based on the second control command.
[0085] In some embodiments, the second display component 1325 may include a second display. A second control command can control the second display to show the first mental state. The second display may be positioned on the front of the second body 1321B, facing the second user 120, so that the second user 110 can see the display interface. The second display is configured to display the first mental state on the display interface. For example, as... Figure 3 As shown, the second display D is positioned on the front of the second main body 1321B. The second display D displays the psychological state of the first user 110 - Peer: Normal.
[0086] In some embodiments, the second display component 1325 may include a second speaker component. A second control command may control the second speaker component (e.g., a loudspeaker) to play a first psychological state. For example, the loudspeaker might play: "Your friend's psychological state is normal."
[0087] In some embodiments, the second display component 1325 may include a temperature regulating component. A second control command can control the temperature regulating component to change its temperature in order to display a first psychological state. The temperature regulating component of the second interactive device 132 may be similar to the temperature regulating component described above, and will not be repeated here.
[0088] In some embodiments, the second display component 1325 may include a flexible deformable component. A second control command may deform the flexible deformable component to different degrees to display a first psychological state. The flexible deformable component of the second interactive device 132 may be similar to the temperature regulation component described above, and will not be repeated here.
[0089] In some embodiments, the second display component 1325 may include a second motion component. As previously described, the second interactive device 132 may be a robot. The second display component 1325 may include a second motion component. The second motion component is configured to perform a second action to display a first mental state. For example, the second housing 1321 may include a second motion component. As previously described, the second housing 1321 may have different forms, and the second housing 1321 may be in the form of a robot. The second motion component may be a limb, head, etc., of the robot. The second main circuit 1323 can control the movement of the robot's limbs and head to display the first mental state. The second motion component of the second interactive device 132 may be similar to the first motion component described above, and will not be repeated here.
[0090] When the displayed second psychological state is an abnormal state, such as a state of stress, the second user 120 can respond, which can also be called a second feedback operation. The second receiving group 1325 is configured to respond to the second user's response operation, which can also be called a second feedback operation. The second main circuit 1323 can generate second operation data in response to the response operation (second feedback operation).
[0091] To facilitate feedback from the second user 120, the component can be positioned on the side of the housing facing the second user 120, such as the front, or in a location easily accessible to the second user 120, such as the side or top.
[0092] In some embodiments, the second receiving group 1324 may include a second button assembly. The second button assembly is configured to sense a press by the second user 120. The second user 120 responds by pressing the second button assembly. The second button assembly may be located on the second body 1321B. For example, the second button assembly may be located on the front of the second body 1321B, facing the second user 120, for easy operation by the second user 120. The second button assembly may also be located on the sides of both sides of the second body 1321B for easy operation by the second user 120. For example, as... Figure 3As shown, the front of the second main body 1321B is provided with a second button component, button E, which facilitates the second user 110 to perform a response operation.
[0093] In some embodiments, the second receiving component 1324 includes a second microphone component. The second microphone component is configured to capture voice emitted by the second user 110. The second user 110 responds by expressing their own voice. The second microphone component may be disposed on the second body 1321B. For example, the second microphone component may be disposed on the front of the second body 1321B, facing the second user 120, to facilitate the capture of the second user 120's voice. The second microphone component may also be disposed on the sides of both sides of the second body 1321B.
[0094] In some embodiments, the second user 120 can express different responses through the second receiving component 1324. For example, the second user 120 can express the intensity of their response by controlling the duration of pressing the second button component. Different durations correspond to different intensities. As another example, the second user 120 can issue different response commands to cause the second microphone component to pick up different voices. Different response commands or voices correspond to different levels of response. Furthermore, the second receiving component 1324 may include multiple components, with different components corresponding to different levels of response. This specification does not limit the scope of the response.
[0095] As described above, the first user 110 can share its first physiological data with the second user 120 through the first interaction device 131. The second user 120 can determine the first user 110's first psychological state and respond through the second interaction device 132. The first user 110 can receive a timely response through the first interaction device 131, thereby receiving support, gaining emotional strength, and alleviating its abnormal psychological state.
[0096] In some embodiments, the second user 120 may share its physiological data with the first user 110, and the first user 110 may respond to the second user 120 based on the psychological state reflected by the physiological data.
[0097] In this configuration, the second main circuit 1323 can be configured to receive second physiological data from the second user 120 via the first antenna assembly 1312 during operation. After determining that the second user 120 intends to share privacy, the second main circuit 1323 can be configured to share the second physiological data with the first interactive device 131 via the second antenna assembly 1322, and receive first feedback data from the first interactive device 131. This first feedback data represents the first user 110's response to the psychological state of the second user 120. Furthermore, the second main circuit 1323 is configured to display the first user 110's response based on the first feedback data.
[0098] The above working process can be referred to the working process of the first main circuit 1313 mentioned above, and will not be repeated here.
[0099] In some embodiments, the interaction system 130 may further include a second monitoring device to collect second physiological data from the second user 120 in real time. The second physiological data may include source physiological data directly collected by the second monitoring device from the second user 120. The second monitoring device may refer to the first monitoring device described above, and will not be repeated here.
[0100] In some embodiments, the interaction system 130 may further include a second communication device. The second main circuit 1323 may be communicatively connected to the second communication device via a second antenna component 1322, such as via Bluetooth, to receive second physiological data from the second communication device. The second physiological data may be feature data obtained after feature extraction from the source physiological data of the second user 120. The second communication device may refer to the first communication device described above, and will not be repeated here.
[0101] As an example, the second monitoring device is a health monitoring watch worn by the second user 120, and the second communication device is the second user 120's mobile phone. An application (APP) corresponding to the health monitoring watch can be downloaded on the mobile phone. The health monitoring watch can collect the second user 120's heart rate data. The mobile phone can receive the heart rate data sent by the health monitoring watch and obtain the second user 120's heart rate variability data based on the heart rate data.
[0102] Correspondingly, the first user 110 can respond to the second user 120 based on the psychological state reflected in the physiological data. Therefore, in some embodiments, the first main circuit 1313 can be configured to receive the second physiological data of the second user 120 transmitted by the second interactive device 132 via the first antenna assembly 1312. The first main circuit 1313 can determine the second psychological state of the second user 120 based on the second physiological data and display the second psychological state. Furthermore, in response to the first feedback operation made by the first user 110 to the second psychological state of the second user 120, the first main circuit 1313 generates first feedback data and transmits the first feedback data to the second interactive device via the first antenna assembly.
[0103] In some embodiments, the second main circuit 1323 is further configured to determine the second psychological state of the second user 120 based on the second physiological data; and to display the second psychological state to the second user 120. That is, the second user 120 can not only share their psychological state with others through the second interaction device 132, but also know their own psychological state. By providing the second user 120 with a third-party perspective through the second interaction device 132, the second user 120 can promptly detect their abnormal state and thus make better adjustments.
[0104] As previously described, the second interactive device 132 includes components for displaying a first mental state of the first user 110. In some embodiments, these components may also be used to display a second mental state of the second user 120. For example, as... Figure 3 As shown, the second display D also displays the second user 120's second mental state - Your: Attention.
[0105] The above describes a process in which a first user 110 shares their physiological data with a second user 120, the second user 120 responds based on the psychological state reflected in the physiological data, and the first user 110 receives the response and thus receives psychological support. Similarly, embodiments of this specification can also implement a process in which a second user 120 shares their physiological data with a first user 110, the first user 110 responds based on the psychological state reflected in the physiological data, and the second user 120 receives the response and thus receives psychological support. Therefore, each interactive device can integrate all or part of the components of the first interactive device 131 and the second interactive device 132 described above to realize the function of two-way interaction.
[0106] Figure 4 A schematic diagram of an interactive device according to an embodiment of this specification is shown. The interactive device can function as either a first interactive device 131 or a second interactive device 132. That is, through the interactive device, users can both share their mental state and express their support for others. Figure 4 Let's take an example and reiterate the possible structures of each interactive device.
[0107] like Figure 4 As shown, the interactive device includes a button component, such as button 1, to facilitate the user's indication of their intention to share privacy. The interactive device includes a display 2 to show the peer's mental state—Attention. Furthermore, display 2 can also display the user's own mental state—Normal. The interactive device also includes another button component, such as button 3, to facilitate the user's expression of support for the peer. The interactive device may also include another display 4 to display the peer's response to the user's mental state—displaying the words "I'm with you." ".
[0108] The shape and components of the first interactive device 131 and the second interactive device 132 can be designed and selected according to different occasions or preferences. For example, if the user is often in a relatively quiet working environment, the interaction can be presented in a non-verbal form, such as display components or flexible deformable components. Alternatively, if the user prefers verbal or auditory presentation, the interaction can select corresponding components, such as speaker components. Furthermore, if the user prefers interesting responses, the interaction can use motion components to perform actions to display responses.
[0109] As an example, Figure 5 A schematic diagram of the structure of a first interactive device 131 and a second interactive device 132 provided according to embodiments of this specification is shown. Figure 5 As shown, the first interactive device 131 and the second interactive device 132 are designed in the shape of a small robot.
[0110] The first interactive device 131 includes a first button component, such as button a. The first user 110 can indicate their intention to share privacy and their willingness to share first physiological data by pressing button a.
[0111] The second interactive device 132 includes a first display, such as display b. After the first main circuit determines a first psychological state based on the first physiological data, the first psychological state can be displayed on the interactive interface of the first display b. For example, the first psychological state is Normal. The second interactive device 132 can also display the second psychological state of the second user 120. For example, ... Figure 5 As shown, the second interaction device 132 also includes a second display c. The second display c displays the robot's facial expressions. When the robot's lips curve upwards, making a smiling expression, it indicates that the second user 120's psychological state is normal. When the robot's lips turn downwards, making a sad expression, it indicates that the second user 120's psychological state is abnormal.
[0112] The second interaction device 132 also includes a second button component, such as button d. The second user 120 can press button d to respond to the first user 110.
[0113] The first interactive device 131 also includes a second display component, such as an LED light e. The first main circuit 1313 can control the LED light e to blink to display the response of the second user 120. The first interactive device 131 also includes a first moving component, such as a robot's antenna f. The first main circuit 1313 can control the antenna f to swing to display the response of the second user 120. For example, the robot's antenna F swings from a middle position (shown in solid lines) to a left position (shown in dashed lines).
[0114] The second interactive device 132 may have a corresponding structure that is exactly the same or partially the same as that of the first interactive device 131. For example, the second interactive device 132 may also include a component for the second user 120 to indicate their intention to share privacy, and a component for displaying the first user 110's response to their mental state. Correspondingly, the second interactive device 131 may also include a component for the first user 110 to display and respond to the second user's mental state. This specification does not limit this.
[0115] Through the interactive system 130, users can share their psychological states, offer support to others when their psychological state is abnormal, and demonstrate their support to others through the interactive system 130. This allows users to promptly perceive the psychological state of those they care about and provide direct and timely feedback, enabling the recipient to receive timely support, gain emotional strength, and alleviate abnormal psychological states.
[0116] Figure 6 A hardware structure diagram of a circuit 600 provided according to an embodiment of this specification is shown.
[0117] like Figure 6 As shown, the circuit 600 can be Figure 1 The first main circuit 1313 or the second main circuit 1323.
[0118] The circuit 600 includes at least one storage medium 630 and at least one processor 620. In some embodiments, the system 600 may further include a communication port 650 and an internal communication bus 610. Furthermore, the circuit 600 may also include I / O components 660.
[0119] The internal communication bus 610 can connect to different system components. For example, the internal communication bus 610 can connect to storage medium 630, processor 620, communication port 650, and I / O component 660.
[0120] I / O component 660 supports input / output between the circuit 600 and other components. Communication port 650 is used for data communication between the circuit 600 and the outside world. For example, communication port 650 can be used for data communication between the circuit 600 and a network. Communication port 650 can be a wired communication port or a wireless communication port. In some embodiments, the network can be any type of wired or wireless network, or a combination thereof. For example, the network may include a cable network, a wired network, a fiber optic network, a telecommunications network, an intranet, the Internet, a local area network (LAN), a wide area network (WAN), a wireless local area network (WLAN), a metropolitan area network (MAN), a public switched telephone network (PSTN), a Bluetooth network™, a ZigBee™ short-range wireless network, a near field communication (NFC) network, or a similar network. In some embodiments, the network may include one or more network access points. For example, the network may include wired or wireless network access points, such as base stations or internet switching points. Through these access points, one or more components of the various devices corresponding to the circuit 600 can connect to the network to exchange data or information.
[0121] Storage medium 630 may include a data storage device. The data storage device may be a non-transitory storage medium or a temporary storage medium. For example, the data storage device may include one or more of a disk 632, a read-only storage medium (ROM) 634, or a random access storage medium (RAM) 636. Storage medium 630 also includes at least one instruction set stored in the data storage device. The instruction set may include computer program code, which may include programs, routines, objects, components, data structures, procedures, modules, etc., that execute the interactive methods provided in this specification.
[0122] Processor 620 can be communicatively connected to storage medium 630. Processor 620 is used to execute at least one instruction set described above. When circuit 600 is running, processor 620 reads the at least one instruction set and executes the corresponding interaction method according to the instructions of the at least one instruction set. Processor 620 can be in the form of one or more processors. In some embodiments, processor 620 may include one or more hardware processors, such as microcontrollers, microprocessors, reduced instruction set computers (RISC), application-specific integrated circuits (ASICs), application-specific instruction set processors (ASIPs), central processing units (CPUs), graphics processing units (GPUs), physical processing units (PPUs), microcontroller units, digital signal processors (DSPs), field-programmable gate arrays (FPGAs), advanced RISC machines (ARMs), programmable logic devices (PLDs), any circuit or processor capable of performing one or more functions, or any combination thereof.
[0123] For illustrative purposes only, only one processor 620 is shown in the circuit 600 described in the accompanying drawings. However, it should be noted that the circuit 600 described in this specification may also include multiple processors. Therefore, the operation and / or method steps disclosed in this specification may be executed by a single processor as described in this specification, or they may be executed jointly by multiple processors. For example, if processor 620 of the circuit 600 described in this specification executes steps A and B, it should be understood that steps A and B may also be executed jointly or separately by two different processors 620 (e.g., a first processor executes step A, a second processor executes step B, or the first and second processors jointly execute steps A and B).
[0124] In summary, this specification provides an interactive system. Through this system, a first user and a second user can share their psychological data and provide support to each other when the other's psychological state is abnormal, as well as demonstrate their support through the system. This allows users to promptly perceive the psychological state of their loved ones and provide direct and timely feedback, enabling the loved ones to receive timely support, gain emotional support, and alleviate their abnormal psychological state.
[0125] The foregoing has described specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than that shown in the embodiments and may still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require a specific or sequential order to achieve the desired result. In some embodiments, multitasking and parallel processing are possible or may be advantageous.
[0126] In summary, after reading this detailed disclosure, those skilled in the art will understand that the foregoing detailed disclosure is presented by way of example only and is not restrictive. Although not explicitly stated herein, those skilled in the art will understand that this specification requires various reasonable changes, improvements, and modifications to the embodiments. These changes, improvements, and modifications are intended to be made by this specification and are within the spirit and scope of the exemplary embodiments described herein.
[0127] Furthermore, certain terms in this specification have been used to describe embodiments of this specification. For example, "an embodiment," "an embodiment," and / or "some embodiments" mean that a particular feature, structure, or characteristic described in connection with that embodiment may be included in at least one embodiment of this specification. Therefore, it is to be emphasized and understood that two or more references to "an embodiment" or "an embodiment" or "alternative embodiment" in various parts of this specification do not necessarily refer to the same embodiment. Moreover, specific features, structures, or characteristics may be suitably combined in one or more embodiments of this specification.
[0128] It should be understood that in the foregoing description of the embodiments in this specification, various features are combined in a single embodiment, drawing, or description for the purpose of simplifying the description and aiding in the understanding of a feature. However, this does not mean that the combination of these features is necessary, and those skilled in the art may readily identify some of the devices as separate embodiments when reading this specification. That is, the embodiments in this specification can also be understood as an integration of multiple secondary embodiments. It is also valid when each secondary embodiment contains fewer than all the features of a single foregoing disclosed embodiment.
[0129] Every patent, patent application, publication of a patent application, and other material such as articles, books, specifications, publications, documents, articles, etc., cited herein, except for any related historical prosecution documents, any identical ones that may be inconsistent with or conflict with this document, or any identical historical prosecution documents that may have a limiting effect on the widest scope of the claims, may be incorporated herein by reference and used for all purposes now or hereafter in connection with this document. Furthermore, in the event of any inconsistency or conflict between the description, definition, and / or use of terms related to any included material and those related to this document, the terminology used herein shall prevail.
[0130] Finally, it should be understood that the embodiments disclosed herein are illustrative of the principles of the embodiments described in this specification. Other modified embodiments are also within the scope of this specification. Therefore, the embodiments disclosed in this specification are merely examples and not limitations. Those skilled in the art can implement the applications described in this specification using alternative configurations based on the embodiments in this specification. Therefore, the embodiments in this specification are not limited to the embodiments precisely described in the applications.
Claims
1. An interactive system, characterized by include: A first interactive device, for placement on a desktop, includes a first housing, a first antenna assembly, a first receiving assembly, a first display assembly, and a first main circuit. The first housing, mechanically connected to the first antenna assembly, the first main circuit, the first receiving assembly, and the first display assembly, includes: A first base is used to place the first interactive device on a desktop, and The first main body is mounted on the first base. The first receiving component is configured to respond to a privacy sharing operation by the first user. The first main circuit is coupled to the first antenna assembly, the first receiving assembly, and the first display assembly, and is configured to receive and transmit the first physiological data of the first user to the second interactive device through the first antenna assembly, receive and process data from the first receiving assembly, and generate a first control command. The first display component is configured to display the second user's response in accordance with the first control command.
2. The interactive system of claim 1, wherein, The first interactive device is on the order of centimeters in size, so that it can be placed on a desktop.
3. The interactive system of claim 1, wherein, The first receiving component includes: A first button component is disposed on the first body and configured to sense the pressure of the first user.
4. The interactive system of claim 1, wherein, The first receiving component includes: A first microphone assembly, disposed on the first body, is configured to capture the voice emitted by the first user.
5. The interactive system of claim 1, wherein, The first display component includes: A first display, disposed on the front of the first main body, includes a display interface and is configured to display response content related to the response of the second user on the display interface. The response content may take the form of at least one of text, images, animation, or video.
6. The interactive system of claim 1, wherein, The first display component includes: A first light component, disposed on the first body, is configured to flash in a predetermined manner to indicate the response of the second user.
7. The interactive system of claim 1, wherein, The first interactive device includes a robot.
8. The interactive system of claim 7, wherein, The first display component includes: A first motion component, configured to perform a first predetermined action to display the second user's response. The first moving part is the robot's limb.
9. The interactive system of claim 1, wherein, It also includes the first communication device, The first antenna assembly includes a Bluetooth antenna, and The first main circuit connects to the first communication device via Bluetooth through the first antenna assembly and receives the first physiological data from the first communication device. The first physiological data is feature data obtained by extracting features from the source physiological data of the first user.
10. The interactive system according to claim 9, characterized in that, The source physiological data includes cardiac interval sequences; and The first physiological data includes time-domain parameters and / or frequency-domain parameters characterizing heart rate variability.
11. The interactive system of claim 1, wherein, It also includes the first monitoring equipment, The first antenna assembly includes a Bluetooth antenna, and The first main circuit connects to the first monitoring device via Bluetooth through the first antenna assembly and receives the first physiological data from the first monitoring device. The first physiological data refers to the source physiological data directly collected by the first monitoring device from the first user.
12. The interactive system of claim 1, wherein, The first main circuit is configured to share the first physiological data with the second interactive device via the first antenna assembly.
13. The interactive system of claim 12, wherein, The first main circuit establishes a communication connection with a remote server and sends a first instruction, including first physiological data, to the server.
14. The interactive system of claim 1, wherein, The first display component is also configured to display the first psychological state corresponding to the first psychological data of the first user.
15. An interactive system, characterized by include: The second interactive device, for placement on a desktop, includes a second housing, a second antenna assembly, a second receiving assembly, a second display assembly, and a second main circuit. The second housing, mechanically connected to the second main circuit, the second antenna assembly, the second receiving assembly, and the second display assembly, includes: The second base is used to place the second interactive device on the desktop, and The second main body is mounted on the second base. The second main circuit is coupled to the second receiving component, the second display component, and the second antenna component, and is configured to receive and process first physiological data of the first user emitted by the first interactive device through the second antenna component, generate second control commands, and receive and process data from the second receiving component. The second display component is configured to display the first psychological state corresponding to the first physiological data based on the second control command. The second receiving component is configured to respond to the response operation of the second user.
16. The interactive system of claim 15, wherein, The second interactive device is on the order of centimeters in size, so that it can be placed on a desktop.
17. The interactive system of claim 15, wherein, The second receiving component includes: A second button assembly, disposed on the second body, is configured to sense the pressure applied by the second user.
18. The interactive system of claim 15, wherein, The second receiving component includes: A second microphone assembly, disposed on the second body, is configured to capture the voice emitted by the second user.
19. The interactive system of claim 15, wherein, The second display component includes: A second display, disposed on the front of the second main body, includes a display interface and is configured to display the first psychological state on the display interface.
20. The interactive system of claim 15, wherein, The second display component includes: A second speaker assembly, disposed on the second main body, is configured to play the first psychological state.
21. The interactive system of claim 15, wherein, The second interactive device includes a robot.
22. The interactive system of claim 21, wherein, The second display component includes: A second motion component, configured to perform a second predetermined action to display the second user's response. The second moving part is the robot's limb.
23. The system of claim 15, wherein, It also includes a second communication device configured to receive the first physiological data sent by the first interactive device. The second antenna assembly includes a Bluetooth antenna; The second main circuit connects to the second communication device via Bluetooth through the second antenna assembly and receives the first physiological data from the second communication device. The first physiological data is feature data obtained by extracting features from the source physiological data of the first user.
24. The system of claim 15, wherein, The second main circuit establishes a communication connection with a remote server, receives a second instruction from the server including first physiological data, and determines the first psychological state of the first user based on the first physiological data.
25. The system according to claim 15, characterized in that, The second main circuit is configured to generate second feedback data in response to a second feedback operation performed by the second user on the second receiving component.
26. The system of claim 25, wherein, The second main circuit sends the second feedback data to the first interactive device through the second antenna assembly.
27. An interactive system, characterized by Including a first interactive device and a second interactive device, The first interactive device is designed to be placed on a desktop and includes a first housing, a first antenna assembly, a first receiving assembly, a first display assembly, and a first main circuit. The first housing is mechanically connected to the first antenna assembly, the first main circuit, the first receiving assembly, and the first display assembly. The first housing includes: A first base is used to place the first interactive device on a desktop, and The first main body is mounted on the first base. The first receiving component is configured to respond to a privacy sharing operation by the first user. The first main circuit is coupled to the first antenna assembly, the first receiving assembly, and the first display assembly, and is configured to receive and transmit the first physiological data of the first user to the second interactive device through the first antenna assembly, receive and process data from the first receiving assembly, and generate a first control command. The first display component is configured to display the second user's response in accordance with the first control command. The second interactive device, for placement on a desktop, includes a second housing, a second antenna assembly, a second receiving assembly, a second display assembly, and a second main circuit, wherein... The second housing, mechanically connected to the second main circuit, the second antenna assembly, the second receiving assembly, and the second display assembly, includes: The second base is used to place the second interactive device on the desktop, and The second main body is mounted on the first base. The second main circuit is coupled to the second receiving component, the second display component, and the second antenna component, and is configured to receive and process the first physiological data through the second antenna component, generate a second control command, and receive and process data from the second receiving component. The second display component is configured to display the first psychological state corresponding to the first physiological data based on the second control command. The second receiving group is configured to respond to the response operation of the second user.